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Structure–Property Relationship of Phenylene-Based Self-Assembled Monolayers for Record Low Work Function of Indium Tin Oxide

机译:亚苯基自组装单层对氧化铟铟锡记录低功函数的结构性质关系

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Studying the structure–property relations of tailored dipolar phenyl and biphenylphosphonic acids, we report self-assembled monolayers with a significant decrease in the work function (WF) of indium–tin oxide (ITO) electrodes. Whereas the strengths of the dipoles are varied through the different molecular lengths and the introduction of electron-withdrawing fluorine atoms, the surface energy is kept constant through the electron-donating N ,N- dimethylamine head groups. The self-assembled monolayer formation and its modification of the electrodes are investigated via infrared reflection absorption spectroscopy, contact angle measurements, and photoelectron spectroscopy. The WF decrease in ITO correlates with increasing molecular dipoles. The lowest ever recorded WF of 3.7 eV is achieved with the fluorinated biphenylphosphonic acid.
机译:研究定制的偶极苯基和联苯基膦酸的结构 - 性质关系,我们报告了自组装的单层,在氧化铟锡(ITO)电极的功函数(WF)中具有显着降低。 虽然偶极子的强度通过不同的分子长而变化,并且引入了吸电子氟原子,但是表面能通过电子给予的电子给予恒定的浓度 N-二甲胺头组。 通过红外反射吸收光谱,接触角测量和光电子体光谱研究了自组装的单层形成及其对电极的改性。 ITO的WF减少与增加的分子偶极子相关。 用氟化联苯膦酸膦酸实现最低记录的3.7eV的WF。

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